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Influence of deformation and molybdenum content on acicular ferrite formation in medium carbon steels

机译:变形和钼含量对中碳钢针状铁素体形成的影响

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摘要

The present work deals with the influence of deformation and molybdenum content on the subsequent austenite-to-acicular ferrite transformation during continuous cooling in medium carbon microalloyed steels. The results obtained demonstrate that higher deformation temperature induces a finer austenite grain size as a result of austenite recrystallisation processes during cooling down to austenite decomposition temperature. The higher the molybdenum content and severity of deformation are, the finer austenite grain is. Likewise, it was concluded that molybdenum suppress pearlitic microstructure, and clearly delay proeutectoid ferrite field to longer times. By contrast, acicular ferrite transformation is enhanced in molybdenum rich steel, which not only affect the volume fraction but also the morphology of acicular ferrite. © 2006 ISIJ.
机译:本文研究了中碳微合金钢在连续冷却过程中变形和钼含量对随后奥氏体向针状铁素体转变的影响。所获得的结果表明,较高的形变温度在冷却至奥氏体分解温度期间,由于奥氏体再结晶过程而诱发出更细的奥氏体晶粒尺寸。钼含量和变形程度越高,奥氏体晶粒越细。同样,得出的结论是,钼抑制珠光体的微观结构,并明显地将共析铁素体的铁素体场延迟了更长的时间。相反,富钼钢中针状铁素体的转变得到增强,这不仅影响了针状铁素体的体积分数,而且还影响了针状铁素体的形貌。 ©2006 ISIJ。

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